1 //===- MetadataLoader.cpp - Internal BitcodeReader implementation ---------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 10 #include "MetadataLoader.h" 11 #include "ValueList.h" 12 13 #include "llvm/ADT/APFloat.h" 14 #include "llvm/ADT/APInt.h" 15 #include "llvm/ADT/ArrayRef.h" 16 #include "llvm/ADT/DenseMap.h" 17 #include "llvm/ADT/DenseSet.h" 18 #include "llvm/ADT/None.h" 19 #include "llvm/ADT/STLExtras.h" 20 #include "llvm/ADT/SmallString.h" 21 #include "llvm/ADT/SmallVector.h" 22 #include "llvm/ADT/Statistic.h" 23 #include "llvm/ADT/StringRef.h" 24 #include "llvm/ADT/Twine.h" 25 #include "llvm/Bitcode/BitcodeReader.h" 26 #include "llvm/Bitcode/BitstreamReader.h" 27 #include "llvm/Bitcode/LLVMBitCodes.h" 28 #include "llvm/IR/Argument.h" 29 #include "llvm/IR/Attributes.h" 30 #include "llvm/IR/AutoUpgrade.h" 31 #include "llvm/IR/BasicBlock.h" 32 #include "llvm/IR/CallingConv.h" 33 #include "llvm/IR/Comdat.h" 34 #include "llvm/IR/Constant.h" 35 #include "llvm/IR/Constants.h" 36 #include "llvm/IR/DebugInfo.h" 37 #include "llvm/IR/DebugInfoMetadata.h" 38 #include "llvm/IR/DebugLoc.h" 39 #include "llvm/IR/DerivedTypes.h" 40 #include "llvm/IR/DiagnosticPrinter.h" 41 #include "llvm/IR/Function.h" 42 #include "llvm/IR/GVMaterializer.h" 43 #include "llvm/IR/GlobalAlias.h" 44 #include "llvm/IR/GlobalIFunc.h" 45 #include "llvm/IR/GlobalIndirectSymbol.h" 46 #include "llvm/IR/GlobalObject.h" 47 #include "llvm/IR/GlobalValue.h" 48 #include "llvm/IR/GlobalVariable.h" 49 #include "llvm/IR/InlineAsm.h" 50 #include "llvm/IR/InstrTypes.h" 51 #include "llvm/IR/Instruction.h" 52 #include "llvm/IR/Instructions.h" 53 #include "llvm/IR/IntrinsicInst.h" 54 #include "llvm/IR/Intrinsics.h" 55 #include "llvm/IR/LLVMContext.h" 56 #include "llvm/IR/Module.h" 57 #include "llvm/IR/ModuleSummaryIndex.h" 58 #include "llvm/IR/OperandTraits.h" 59 #include "llvm/IR/TrackingMDRef.h" 60 #include "llvm/IR/Type.h" 61 #include "llvm/IR/ValueHandle.h" 62 #include "llvm/Support/AtomicOrdering.h" 63 #include "llvm/Support/Casting.h" 64 #include "llvm/Support/CommandLine.h" 65 #include "llvm/Support/Compiler.h" 66 #include "llvm/Support/Debug.h" 67 #include "llvm/Support/Error.h" 68 #include "llvm/Support/ErrorHandling.h" 69 #include "llvm/Support/ManagedStatic.h" 70 #include "llvm/Support/MemoryBuffer.h" 71 #include "llvm/Support/raw_ostream.h" 72 #include <algorithm> 73 #include <cassert> 74 #include <cstddef> 75 #include <cstdint> 76 #include <deque> 77 #include <limits> 78 #include <map> 79 #include <memory> 80 #include <string> 81 #include <system_error> 82 #include <tuple> 83 #include <utility> 84 #include <vector> 85 86 using namespace llvm; 87 88 #define DEBUG_TYPE "bitcode-reader" 89 90 STATISTIC(NumMDStringLoaded, "Number of MDStrings loaded"); 91 STATISTIC(NumMDNodeTemporary, "Number of MDNode::Temporary created"); 92 STATISTIC(NumMDRecordLoaded, "Number of Metadata records loaded"); 93 94 /// Flag whether we need to import full type definitions for ThinLTO. 95 /// Currently needed for Darwin and LLDB. 96 static cl::opt<bool> ImportFullTypeDefinitions( 97 "import-full-type-definitions", cl::init(false), cl::Hidden, 98 cl::desc("Import full type definitions for ThinLTO.")); 99 100 static cl::opt<bool> DisableLazyLoading( 101 "disable-ondemand-mds-loading", cl::init(false), cl::Hidden, 102 cl::desc("Force disable the lazy-loading on-demand of metadata when " 103 "loading bitcode for importing.")); 104 105 namespace { 106 107 static int64_t unrotateSign(uint64_t U) { return U & 1 ? ~(U >> 1) : U >> 1; } 108 109 class BitcodeReaderMetadataList { 110 /// Array of metadata references. 111 /// 112 /// Don't use std::vector here. Some versions of libc++ copy (instead of 113 /// move) on resize, and TrackingMDRef is very expensive to copy. 114 SmallVector<TrackingMDRef, 1> MetadataPtrs; 115 116 /// The set of indices in MetadataPtrs above of forward references that were 117 /// generated. 118 SmallDenseSet<unsigned, 1> ForwardReference; 119 120 /// The set of indices in MetadataPtrs above of Metadata that need to be 121 /// resolved. 122 SmallDenseSet<unsigned, 1> UnresolvedNodes; 123 124 /// Structures for resolving old type refs. 125 struct { 126 SmallDenseMap<MDString *, TempMDTuple, 1> Unknown; 127 SmallDenseMap<MDString *, DICompositeType *, 1> Final; 128 SmallDenseMap<MDString *, DICompositeType *, 1> FwdDecls; 129 SmallVector<std::pair<TrackingMDRef, TempMDTuple>, 1> Arrays; 130 } OldTypeRefs; 131 132 LLVMContext &Context; 133 134 public: 135 BitcodeReaderMetadataList(LLVMContext &C) : Context(C) {} 136 137 // vector compatibility methods 138 unsigned size() const { return MetadataPtrs.size(); } 139 void resize(unsigned N) { MetadataPtrs.resize(N); } 140 void push_back(Metadata *MD) { MetadataPtrs.emplace_back(MD); } 141 void clear() { MetadataPtrs.clear(); } 142 Metadata *back() const { return MetadataPtrs.back(); } 143 void pop_back() { MetadataPtrs.pop_back(); } 144 bool empty() const { return MetadataPtrs.empty(); } 145 146 Metadata *operator[](unsigned i) const { 147 assert(i < MetadataPtrs.size()); 148 return MetadataPtrs[i]; 149 } 150 151 Metadata *lookup(unsigned I) const { 152 if (I < MetadataPtrs.size()) 153 return MetadataPtrs[I]; 154 return nullptr; 155 } 156 157 void shrinkTo(unsigned N) { 158 assert(N <= size() && "Invalid shrinkTo request!"); 159 assert(ForwardReference.empty() && "Unexpected forward refs"); 160 assert(UnresolvedNodes.empty() && "Unexpected unresolved node"); 161 MetadataPtrs.resize(N); 162 } 163 164 /// Return the given metadata, creating a replaceable forward reference if 165 /// necessary. 166 Metadata *getMetadataFwdRef(unsigned Idx); 167 168 /// Return the given metadata only if it is fully resolved. 169 /// 170 /// Gives the same result as \a lookup(), unless \a MDNode::isResolved() 171 /// would give \c false. 172 Metadata *getMetadataIfResolved(unsigned Idx); 173 174 MDNode *getMDNodeFwdRefOrNull(unsigned Idx); 175 void assignValue(Metadata *MD, unsigned Idx); 176 void tryToResolveCycles(); 177 bool hasFwdRefs() const { return !ForwardReference.empty(); } 178 int getNextFwdRef() { 179 assert(hasFwdRefs()); 180 return *ForwardReference.begin(); 181 } 182 183 /// Upgrade a type that had an MDString reference. 184 void addTypeRef(MDString &UUID, DICompositeType &CT); 185 186 /// Upgrade a type that had an MDString reference. 187 Metadata *upgradeTypeRef(Metadata *MaybeUUID); 188 189 /// Upgrade a type ref array that may have MDString references. 190 Metadata *upgradeTypeRefArray(Metadata *MaybeTuple); 191 192 private: 193 Metadata *resolveTypeRefArray(Metadata *MaybeTuple); 194 }; 195 196 void BitcodeReaderMetadataList::assignValue(Metadata *MD, unsigned Idx) { 197 if (auto *MDN = dyn_cast<MDNode>(MD)) 198 if (!MDN->isResolved()) 199 UnresolvedNodes.insert(Idx); 200 201 if (Idx == size()) { 202 push_back(MD); 203 return; 204 } 205 206 if (Idx >= size()) 207 resize(Idx + 1); 208 209 TrackingMDRef &OldMD = MetadataPtrs[Idx]; 210 if (!OldMD) { 211 OldMD.reset(MD); 212 return; 213 } 214 215 // If there was a forward reference to this value, replace it. 216 TempMDTuple PrevMD(cast<MDTuple>(OldMD.get())); 217 PrevMD->replaceAllUsesWith(MD); 218 ForwardReference.erase(Idx); 219 } 220 221 Metadata *BitcodeReaderMetadataList::getMetadataFwdRef(unsigned Idx) { 222 if (Idx >= size()) 223 resize(Idx + 1); 224 225 if (Metadata *MD = MetadataPtrs[Idx]) 226 return MD; 227 228 // Track forward refs to be resolved later. 229 ForwardReference.insert(Idx); 230 231 // Create and return a placeholder, which will later be RAUW'd. 232 ++NumMDNodeTemporary; 233 Metadata *MD = MDNode::getTemporary(Context, None).release(); 234 MetadataPtrs[Idx].reset(MD); 235 return MD; 236 } 237 238 Metadata *BitcodeReaderMetadataList::getMetadataIfResolved(unsigned Idx) { 239 Metadata *MD = lookup(Idx); 240 if (auto *N = dyn_cast_or_null<MDNode>(MD)) 241 if (!N->isResolved()) 242 return nullptr; 243 return MD; 244 } 245 246 MDNode *BitcodeReaderMetadataList::getMDNodeFwdRefOrNull(unsigned Idx) { 247 return dyn_cast_or_null<MDNode>(getMetadataFwdRef(Idx)); 248 } 249 250 void BitcodeReaderMetadataList::tryToResolveCycles() { 251 if (!ForwardReference.empty()) 252 // Still forward references... can't resolve cycles. 253 return; 254 255 // Give up on finding a full definition for any forward decls that remain. 256 for (const auto &Ref : OldTypeRefs.FwdDecls) 257 OldTypeRefs.Final.insert(Ref); 258 OldTypeRefs.FwdDecls.clear(); 259 260 // Upgrade from old type ref arrays. In strange cases, this could add to 261 // OldTypeRefs.Unknown. 262 for (const auto &Array : OldTypeRefs.Arrays) 263 Array.second->replaceAllUsesWith(resolveTypeRefArray(Array.first.get())); 264 OldTypeRefs.Arrays.clear(); 265 266 // Replace old string-based type refs with the resolved node, if possible. 267 // If we haven't seen the node, leave it to the verifier to complain about 268 // the invalid string reference. 269 for (const auto &Ref : OldTypeRefs.Unknown) { 270 if (DICompositeType *CT = OldTypeRefs.Final.lookup(Ref.first)) 271 Ref.second->replaceAllUsesWith(CT); 272 else 273 Ref.second->replaceAllUsesWith(Ref.first); 274 } 275 OldTypeRefs.Unknown.clear(); 276 277 if (UnresolvedNodes.empty()) 278 // Nothing to do. 279 return; 280 281 // Resolve any cycles. 282 for (unsigned I : UnresolvedNodes) { 283 auto &MD = MetadataPtrs[I]; 284 auto *N = dyn_cast_or_null<MDNode>(MD); 285 if (!N) 286 continue; 287 288 assert(!N->isTemporary() && "Unexpected forward reference"); 289 N->resolveCycles(); 290 } 291 292 // Make sure we return early again until there's another unresolved ref. 293 UnresolvedNodes.clear(); 294 } 295 296 void BitcodeReaderMetadataList::addTypeRef(MDString &UUID, 297 DICompositeType &CT) { 298 assert(CT.getRawIdentifier() == &UUID && "Mismatched UUID"); 299 if (CT.isForwardDecl()) 300 OldTypeRefs.FwdDecls.insert(std::make_pair(&UUID, &CT)); 301 else 302 OldTypeRefs.Final.insert(std::make_pair(&UUID, &CT)); 303 } 304 305 Metadata *BitcodeReaderMetadataList::upgradeTypeRef(Metadata *MaybeUUID) { 306 auto *UUID = dyn_cast_or_null<MDString>(MaybeUUID); 307 if (LLVM_LIKELY(!UUID)) 308 return MaybeUUID; 309 310 if (auto *CT = OldTypeRefs.Final.lookup(UUID)) 311 return CT; 312 313 auto &Ref = OldTypeRefs.Unknown[UUID]; 314 if (!Ref) 315 Ref = MDNode::getTemporary(Context, None); 316 return Ref.get(); 317 } 318 319 Metadata *BitcodeReaderMetadataList::upgradeTypeRefArray(Metadata *MaybeTuple) { 320 auto *Tuple = dyn_cast_or_null<MDTuple>(MaybeTuple); 321 if (!Tuple || Tuple->isDistinct()) 322 return MaybeTuple; 323 324 // Look through the array immediately if possible. 325 if (!Tuple->isTemporary()) 326 return resolveTypeRefArray(Tuple); 327 328 // Create and return a placeholder to use for now. Eventually 329 // resolveTypeRefArrays() will be resolve this forward reference. 330 OldTypeRefs.Arrays.emplace_back( 331 std::piecewise_construct, std::forward_as_tuple(Tuple), 332 std::forward_as_tuple(MDTuple::getTemporary(Context, None))); 333 return OldTypeRefs.Arrays.back().second.get(); 334 } 335 336 Metadata *BitcodeReaderMetadataList::resolveTypeRefArray(Metadata *MaybeTuple) { 337 auto *Tuple = dyn_cast_or_null<MDTuple>(MaybeTuple); 338 if (!Tuple || Tuple->isDistinct()) 339 return MaybeTuple; 340 341 // Look through the DITypeRefArray, upgrading each DITypeRef. 342 SmallVector<Metadata *, 32> Ops; 343 Ops.reserve(Tuple->getNumOperands()); 344 for (Metadata *MD : Tuple->operands()) 345 Ops.push_back(upgradeTypeRef(MD)); 346 347 return MDTuple::get(Context, Ops); 348 } 349 350 namespace { 351 352 class PlaceholderQueue { 353 // Placeholders would thrash around when moved, so store in a std::deque 354 // instead of some sort of vector. 355 std::deque<DistinctMDOperandPlaceholder> PHs; 356 357 public: 358 ~PlaceholderQueue() { 359 assert(empty() && "PlaceholderQueue hasn't been flushed before being destroyed"); 360 } 361 bool empty() { return PHs.empty(); } 362 DistinctMDOperandPlaceholder &getPlaceholderOp(unsigned ID); 363 void flush(BitcodeReaderMetadataList &MetadataList); 364 365 /// Return the list of temporaries nodes in the queue, these need to be 366 /// loaded before we can flush the queue. 367 void getTemporaries(BitcodeReaderMetadataList &MetadataList, 368 DenseSet<unsigned> &Temporaries) { 369 for (auto &PH : PHs) { 370 auto ID = PH.getID(); 371 auto *MD = MetadataList.lookup(ID); 372 if (!MD) { 373 Temporaries.insert(ID); 374 continue; 375 } 376 auto *N = dyn_cast_or_null<MDNode>(MD); 377 if (N && N->isTemporary()) 378 Temporaries.insert(ID); 379 } 380 } 381 }; 382 383 } // end anonymous namespace 384 385 DistinctMDOperandPlaceholder &PlaceholderQueue::getPlaceholderOp(unsigned ID) { 386 PHs.emplace_back(ID); 387 return PHs.back(); 388 } 389 390 void PlaceholderQueue::flush(BitcodeReaderMetadataList &MetadataList) { 391 while (!PHs.empty()) { 392 auto *MD = MetadataList.lookup(PHs.front().getID()); 393 assert(MD && "Flushing placeholder on unassigned MD"); 394 #ifndef NDEBUG 395 if (auto *MDN = dyn_cast<MDNode>(MD)) 396 assert(MDN->isResolved() && 397 "Flushing Placeholder while cycles aren't resolved"); 398 #endif 399 PHs.front().replaceUseWith(MD); 400 PHs.pop_front(); 401 } 402 } 403 404 } // anonynous namespace 405 406 static Error error(const Twine &Message) { 407 return make_error<StringError>( 408 Message, make_error_code(BitcodeError::CorruptedBitcode)); 409 } 410 411 class MetadataLoader::MetadataLoaderImpl { 412 BitcodeReaderMetadataList MetadataList; 413 BitcodeReaderValueList &ValueList; 414 BitstreamCursor &Stream; 415 LLVMContext &Context; 416 Module &TheModule; 417 std::function<Type *(unsigned)> getTypeByID; 418 419 /// Cursor associated with the lazy-loading of Metadata. This is the easy way 420 /// to keep around the right "context" (Abbrev list) to be able to jump in 421 /// the middle of the metadata block and load any record. 422 BitstreamCursor IndexCursor; 423 424 /// Index that keeps track of MDString values. 425 std::vector<StringRef> MDStringRef; 426 427 /// On-demand loading of a single MDString. Requires the index above to be 428 /// populated. 429 MDString *lazyLoadOneMDString(unsigned Idx); 430 431 /// Index that keeps track of where to find a metadata record in the stream. 432 std::vector<uint64_t> GlobalMetadataBitPosIndex; 433 434 /// Populate the index above to enable lazily loading of metadata, and load 435 /// the named metadata as well as the transitively referenced global 436 /// Metadata. 437 Expected<bool> lazyLoadModuleMetadataBlock(); 438 439 /// On-demand loading of a single metadata. Requires the index above to be 440 /// populated. 441 void lazyLoadOneMetadata(unsigned Idx, PlaceholderQueue &Placeholders); 442 443 // Keep mapping of seens pair of old-style CU <-> SP, and update pointers to 444 // point from SP to CU after a block is completly parsed. 445 std::vector<std::pair<DICompileUnit *, Metadata *>> CUSubprograms; 446 447 /// Functions that need to be matched with subprograms when upgrading old 448 /// metadata. 449 SmallDenseMap<Function *, DISubprogram *, 16> FunctionsWithSPs; 450 451 // Map the bitcode's custom MDKind ID to the Module's MDKind ID. 452 DenseMap<unsigned, unsigned> MDKindMap; 453 454 bool StripTBAA = false; 455 bool HasSeenOldLoopTags = false; 456 bool NeedUpgradeToDIGlobalVariableExpression = false; 457 bool NeedDeclareExpressionUpgrade = false; 458 459 /// True if metadata is being parsed for a module being ThinLTO imported. 460 bool IsImporting = false; 461 462 Error parseOneMetadata(SmallVectorImpl<uint64_t> &Record, unsigned Code, 463 PlaceholderQueue &Placeholders, StringRef Blob, 464 unsigned &NextMetadataNo); 465 Error parseMetadataStrings(ArrayRef<uint64_t> Record, StringRef Blob, 466 function_ref<void(StringRef)> CallBack); 467 Error parseGlobalObjectAttachment(GlobalObject &GO, 468 ArrayRef<uint64_t> Record); 469 Error parseMetadataKindRecord(SmallVectorImpl<uint64_t> &Record); 470 471 void resolveForwardRefsAndPlaceholders(PlaceholderQueue &Placeholders); 472 473 /// Upgrade old-style CU <-> SP pointers to point from SP to CU. 474 void upgradeCUSubprograms() { 475 for (auto CU_SP : CUSubprograms) 476 if (auto *SPs = dyn_cast_or_null<MDTuple>(CU_SP.second)) 477 for (auto &Op : SPs->operands()) 478 if (auto *SP = dyn_cast_or_null<DISubprogram>(Op)) 479 SP->replaceUnit(CU_SP.first); 480 CUSubprograms.clear(); 481 } 482 483 /// Upgrade old-style bare DIGlobalVariables to DIGlobalVariableExpressions. 484 void upgradeCUVariables() { 485 if (!NeedUpgradeToDIGlobalVariableExpression) 486 return; 487 488 // Upgrade list of variables attached to the CUs. 489 if (NamedMDNode *CUNodes = TheModule.getNamedMetadata("llvm.dbg.cu")) 490 for (unsigned I = 0, E = CUNodes->getNumOperands(); I != E; ++I) { 491 auto *CU = cast<DICompileUnit>(CUNodes->getOperand(I)); 492 if (auto *GVs = dyn_cast_or_null<MDTuple>(CU->getRawGlobalVariables())) 493 for (unsigned I = 0; I < GVs->getNumOperands(); I++) 494 if (auto *GV = 495 dyn_cast_or_null<DIGlobalVariable>(GVs->getOperand(I))) { 496 auto *DGVE = DIGlobalVariableExpression::getDistinct( 497 Context, GV, DIExpression::get(Context, {})); 498 GVs->replaceOperandWith(I, DGVE); 499 } 500 } 501 502 // Upgrade variables attached to globals. 503 for (auto &GV : TheModule.globals()) { 504 SmallVector<MDNode *, 1> MDs; 505 GV.getMetadata(LLVMContext::MD_dbg, MDs); 506 GV.eraseMetadata(LLVMContext::MD_dbg); 507 for (auto *MD : MDs) 508 if (auto *DGV = dyn_cast_or_null<DIGlobalVariable>(MD)) { 509 auto *DGVE = DIGlobalVariableExpression::getDistinct( 510 Context, DGV, DIExpression::get(Context, {})); 511 GV.addMetadata(LLVMContext::MD_dbg, *DGVE); 512 } else 513 GV.addMetadata(LLVMContext::MD_dbg, *MD); 514 } 515 } 516 517 /// Remove a leading DW_OP_deref from DIExpressions in a dbg.declare that 518 /// describes a function argument. 519 void upgradeDeclareExpressions(Function &F) { 520 if (!NeedDeclareExpressionUpgrade) 521 return; 522 523 for (auto &BB : F) 524 for (auto &I : BB) 525 if (auto *DDI = dyn_cast<DbgDeclareInst>(&I)) 526 if (auto *DIExpr = DDI->getExpression()) 527 if (DIExpr->startsWithDeref() && 528 dyn_cast_or_null<Argument>(DDI->getAddress())) { 529 SmallVector<uint64_t, 8> Ops; 530 Ops.append(std::next(DIExpr->elements_begin()), 531 DIExpr->elements_end()); 532 auto *E = DIExpression::get(Context, Ops); 533 DDI->setOperand(2, MetadataAsValue::get(Context, E)); 534 } 535 } 536 537 /// Upgrade the expression from previous versions. 538 Error upgradeDIExpression(uint64_t FromVersion, 539 MutableArrayRef<uint64_t> &Expr, 540 SmallVectorImpl<uint64_t> &Buffer) { 541 auto N = Expr.size(); 542 switch (FromVersion) { 543 default: 544 return error("Invalid record"); 545 case 0: 546 if (N >= 3 && Expr[N - 3] == dwarf::DW_OP_bit_piece) 547 Expr[N - 3] = dwarf::DW_OP_LLVM_fragment; 548 LLVM_FALLTHROUGH; 549 case 1: 550 // Move DW_OP_deref to the end. 551 if (N && Expr[0] == dwarf::DW_OP_deref) { 552 auto End = Expr.end(); 553 if (Expr.size() >= 3 && 554 *std::prev(End, 3) == dwarf::DW_OP_LLVM_fragment) 555 End = std::prev(End, 3); 556 std::move(std::next(Expr.begin()), End, Expr.begin()); 557 *std::prev(End) = dwarf::DW_OP_deref; 558 } 559 NeedDeclareExpressionUpgrade = true; 560 LLVM_FALLTHROUGH; 561 case 2: { 562 // Change DW_OP_plus to DW_OP_plus_uconst. 563 // Change DW_OP_minus to DW_OP_uconst, DW_OP_minus 564 auto SubExpr = ArrayRef<uint64_t>(Expr); 565 while (!SubExpr.empty()) { 566 // Skip past other operators with their operands 567 // for this version of the IR, obtained from 568 // from historic DIExpression::ExprOperand::getSize(). 569 size_t HistoricSize; 570 switch (SubExpr.front()) { 571 default: 572 HistoricSize = 1; 573 break; 574 case dwarf::DW_OP_constu: 575 case dwarf::DW_OP_minus: 576 case dwarf::DW_OP_plus: 577 HistoricSize = 2; 578 break; 579 case dwarf::DW_OP_LLVM_fragment: 580 HistoricSize = 3; 581 break; 582 } 583 584 // If the expression is malformed, make sure we don't 585 // copy more elements than we should. 586 HistoricSize = std::min(SubExpr.size(), HistoricSize); 587 ArrayRef<uint64_t> Args = SubExpr.slice(1, HistoricSize-1); 588 589 switch (SubExpr.front()) { 590 case dwarf::DW_OP_plus: 591 Buffer.push_back(dwarf::DW_OP_plus_uconst); 592 Buffer.append(Args.begin(), Args.end()); 593 break; 594 case dwarf::DW_OP_minus: 595 Buffer.push_back(dwarf::DW_OP_constu); 596 Buffer.append(Args.begin(), Args.end()); 597 Buffer.push_back(dwarf::DW_OP_minus); 598 break; 599 default: 600 Buffer.push_back(*SubExpr.begin()); 601 Buffer.append(Args.begin(), Args.end()); 602 break; 603 } 604 605 // Continue with remaining elements. 606 SubExpr = SubExpr.slice(HistoricSize); 607 } 608 Expr = MutableArrayRef<uint64_t>(Buffer); 609 LLVM_FALLTHROUGH; 610 } 611 case 3: 612 // Up-to-date! 613 break; 614 } 615 616 return Error::success(); 617 } 618 619 void upgradeDebugInfo() { 620 upgradeCUSubprograms(); 621 upgradeCUVariables(); 622 } 623 624 public: 625 MetadataLoaderImpl(BitstreamCursor &Stream, Module &TheModule, 626 BitcodeReaderValueList &ValueList, 627 std::function<Type *(unsigned)> getTypeByID, 628 bool IsImporting) 629 : MetadataList(TheModule.getContext()), ValueList(ValueList), 630 Stream(Stream), Context(TheModule.getContext()), TheModule(TheModule), 631 getTypeByID(std::move(getTypeByID)), IsImporting(IsImporting) {} 632 633 Error parseMetadata(bool ModuleLevel); 634 635 bool hasFwdRefs() const { return MetadataList.hasFwdRefs(); } 636 637 Metadata *getMetadataFwdRefOrLoad(unsigned ID) { 638 if (ID < MDStringRef.size()) 639 return lazyLoadOneMDString(ID); 640 if (auto *MD = MetadataList.lookup(ID)) 641 return MD; 642 // If lazy-loading is enabled, we try recursively to load the operand 643 // instead of creating a temporary. 644 if (ID < (MDStringRef.size() + GlobalMetadataBitPosIndex.size())) { 645 PlaceholderQueue Placeholders; 646 lazyLoadOneMetadata(ID, Placeholders); 647 resolveForwardRefsAndPlaceholders(Placeholders); 648 return MetadataList.lookup(ID); 649 } 650 return MetadataList.getMetadataFwdRef(ID); 651 } 652 653 DISubprogram *lookupSubprogramForFunction(Function *F) { 654 return FunctionsWithSPs.lookup(F); 655 } 656 657 bool hasSeenOldLoopTags() { return HasSeenOldLoopTags; } 658 659 Error parseMetadataAttachment( 660 Function &F, const SmallVectorImpl<Instruction *> &InstructionList); 661 662 Error parseMetadataKinds(); 663 664 void setStripTBAA(bool Value) { StripTBAA = Value; } 665 bool isStrippingTBAA() { return StripTBAA; } 666 667 unsigned size() const { return MetadataList.size(); } 668 void shrinkTo(unsigned N) { MetadataList.shrinkTo(N); } 669 void upgradeDebugIntrinsics(Function &F) { upgradeDeclareExpressions(F); } 670 }; 671 672 Expected<bool> 673 MetadataLoader::MetadataLoaderImpl::lazyLoadModuleMetadataBlock() { 674 IndexCursor = Stream; 675 SmallVector<uint64_t, 64> Record; 676 // Get the abbrevs, and preload record positions to make them lazy-loadable. 677 while (true) { 678 BitstreamEntry Entry = IndexCursor.advanceSkippingSubblocks( 679 BitstreamCursor::AF_DontPopBlockAtEnd); 680 switch (Entry.Kind) { 681 case BitstreamEntry::SubBlock: // Handled for us already. 682 case BitstreamEntry::Error: 683 return error("Malformed block"); 684 case BitstreamEntry::EndBlock: { 685 return true; 686 } 687 case BitstreamEntry::Record: { 688 // The interesting case. 689 ++NumMDRecordLoaded; 690 uint64_t CurrentPos = IndexCursor.GetCurrentBitNo(); 691 auto Code = IndexCursor.skipRecord(Entry.ID); 692 switch (Code) { 693 case bitc::METADATA_STRINGS: { 694 // Rewind and parse the strings. 695 IndexCursor.JumpToBit(CurrentPos); 696 StringRef Blob; 697 Record.clear(); 698 IndexCursor.readRecord(Entry.ID, Record, &Blob); 699 unsigned NumStrings = Record[0]; 700 MDStringRef.reserve(NumStrings); 701 auto IndexNextMDString = [&](StringRef Str) { 702 MDStringRef.push_back(Str); 703 }; 704 if (auto Err = parseMetadataStrings(Record, Blob, IndexNextMDString)) 705 return std::move(Err); 706 break; 707 } 708 case bitc::METADATA_INDEX_OFFSET: { 709 // This is the offset to the index, when we see this we skip all the 710 // records and load only an index to these. 711 IndexCursor.JumpToBit(CurrentPos); 712 Record.clear(); 713 IndexCursor.readRecord(Entry.ID, Record); 714 if (Record.size() != 2) 715 return error("Invalid record"); 716 auto Offset = Record[0] + (Record[1] << 32); 717 auto BeginPos = IndexCursor.GetCurrentBitNo(); 718 IndexCursor.JumpToBit(BeginPos + Offset); 719 Entry = IndexCursor.advanceSkippingSubblocks( 720 BitstreamCursor::AF_DontPopBlockAtEnd); 721 assert(Entry.Kind == BitstreamEntry::Record && 722 "Corrupted bitcode: Expected `Record` when trying to find the " 723 "Metadata index"); 724 Record.clear(); 725 auto Code = IndexCursor.readRecord(Entry.ID, Record); 726 (void)Code; 727 assert(Code == bitc::METADATA_INDEX && "Corrupted bitcode: Expected " 728 "`METADATA_INDEX` when trying " 729 "to find the Metadata index"); 730 731 // Delta unpack 732 auto CurrentValue = BeginPos; 733 GlobalMetadataBitPosIndex.reserve(Record.size()); 734 for (auto &Elt : Record) { 735 CurrentValue += Elt; 736 GlobalMetadataBitPosIndex.push_back(CurrentValue); 737 } 738 break; 739 } 740 case bitc::METADATA_INDEX: 741 // We don't expect to get there, the Index is loaded when we encounter 742 // the offset. 743 return error("Corrupted Metadata block"); 744 case bitc::METADATA_NAME: { 745 // Named metadata need to be materialized now and aren't deferred. 746 IndexCursor.JumpToBit(CurrentPos); 747 Record.clear(); 748 unsigned Code = IndexCursor.readRecord(Entry.ID, Record); 749 assert(Code == bitc::METADATA_NAME); 750 751 // Read name of the named metadata. 752 SmallString<8> Name(Record.begin(), Record.end()); 753 Code = IndexCursor.ReadCode(); 754 755 // Named Metadata comes in two parts, we expect the name to be followed 756 // by the node 757 Record.clear(); 758 unsigned NextBitCode = IndexCursor.readRecord(Code, Record); 759 assert(NextBitCode == bitc::METADATA_NAMED_NODE); 760 (void)NextBitCode; 761 762 // Read named metadata elements. 763 unsigned Size = Record.size(); 764 NamedMDNode *NMD = TheModule.getOrInsertNamedMetadata(Name); 765 for (unsigned i = 0; i != Size; ++i) { 766 // FIXME: We could use a placeholder here, however NamedMDNode are 767 // taking MDNode as operand and not using the Metadata infrastructure. 768 // It is acknowledged by 'TODO: Inherit from Metadata' in the 769 // NamedMDNode class definition. 770 MDNode *MD = MetadataList.getMDNodeFwdRefOrNull(Record[i]); 771 assert(MD && "Invalid metadata: expect fwd ref to MDNode"); 772 NMD->addOperand(MD); 773 } 774 break; 775 } 776 case bitc::METADATA_GLOBAL_DECL_ATTACHMENT: { 777 // FIXME: we need to do this early because we don't materialize global 778 // value explicitly. 779 IndexCursor.JumpToBit(CurrentPos); 780 Record.clear(); 781 IndexCursor.readRecord(Entry.ID, Record); 782 if (Record.size() % 2 == 0) 783 return error("Invalid record"); 784 unsigned ValueID = Record[0]; 785 if (ValueID >= ValueList.size()) 786 return error("Invalid record"); 787 if (auto *GO = dyn_cast<GlobalObject>(ValueList[ValueID])) 788 if (Error Err = parseGlobalObjectAttachment( 789 *GO, ArrayRef<uint64_t>(Record).slice(1))) 790 return std::move(Err); 791 break; 792 } 793 case bitc::METADATA_KIND: 794 case bitc::METADATA_STRING_OLD: 795 case bitc::METADATA_OLD_FN_NODE: 796 case bitc::METADATA_OLD_NODE: 797 case bitc::METADATA_VALUE: 798 case bitc::METADATA_DISTINCT_NODE: 799 case bitc::METADATA_NODE: 800 case bitc::METADATA_LOCATION: 801 case bitc::METADATA_GENERIC_DEBUG: 802 case bitc::METADATA_SUBRANGE: 803 case bitc::METADATA_ENUMERATOR: 804 case bitc::METADATA_BASIC_TYPE: 805 case bitc::METADATA_DERIVED_TYPE: 806 case bitc::METADATA_COMPOSITE_TYPE: 807 case bitc::METADATA_SUBROUTINE_TYPE: 808 case bitc::METADATA_MODULE: 809 case bitc::METADATA_FILE: 810 case bitc::METADATA_COMPILE_UNIT: 811 case bitc::METADATA_SUBPROGRAM: 812 case bitc::METADATA_LEXICAL_BLOCK: 813 case bitc::METADATA_LEXICAL_BLOCK_FILE: 814 case bitc::METADATA_NAMESPACE: 815 case bitc::METADATA_MACRO: 816 case bitc::METADATA_MACRO_FILE: 817 case bitc::METADATA_TEMPLATE_TYPE: 818 case bitc::METADATA_TEMPLATE_VALUE: 819 case bitc::METADATA_GLOBAL_VAR: 820 case bitc::METADATA_LOCAL_VAR: 821 case bitc::METADATA_LABEL: 822 case bitc::METADATA_EXPRESSION: 823 case bitc::METADATA_OBJC_PROPERTY: 824 case bitc::METADATA_IMPORTED_ENTITY: 825 case bitc::METADATA_GLOBAL_VAR_EXPR: 826 // We don't expect to see any of these, if we see one, give up on 827 // lazy-loading and fallback. 828 MDStringRef.clear(); 829 GlobalMetadataBitPosIndex.clear(); 830 return false; 831 } 832 break; 833 } 834 } 835 } 836 } 837 838 /// Parse a METADATA_BLOCK. If ModuleLevel is true then we are parsing 839 /// module level metadata. 840 Error MetadataLoader::MetadataLoaderImpl::parseMetadata(bool ModuleLevel) { 841 if (!ModuleLevel && MetadataList.hasFwdRefs()) 842 return error("Invalid metadata: fwd refs into function blocks"); 843 844 // Record the entry position so that we can jump back here and efficiently 845 // skip the whole block in case we lazy-load. 846 auto EntryPos = Stream.GetCurrentBitNo(); 847 848 if (Stream.EnterSubBlock(bitc::METADATA_BLOCK_ID)) 849 return error("Invalid record"); 850 851 SmallVector<uint64_t, 64> Record; 852 PlaceholderQueue Placeholders; 853 854 // We lazy-load module-level metadata: we build an index for each record, and 855 // then load individual record as needed, starting with the named metadata. 856 if (ModuleLevel && IsImporting && MetadataList.empty() && 857 !DisableLazyLoading) { 858 auto SuccessOrErr = lazyLoadModuleMetadataBlock(); 859 if (!SuccessOrErr) 860 return SuccessOrErr.takeError(); 861 if (SuccessOrErr.get()) { 862 // An index was successfully created and we will be able to load metadata 863 // on-demand. 864 MetadataList.resize(MDStringRef.size() + 865 GlobalMetadataBitPosIndex.size()); 866 867 // Reading the named metadata created forward references and/or 868 // placeholders, that we flush here. 869 resolveForwardRefsAndPlaceholders(Placeholders); 870 upgradeDebugInfo(); 871 // Return at the beginning of the block, since it is easy to skip it 872 // entirely from there. 873 Stream.ReadBlockEnd(); // Pop the abbrev block context. 874 Stream.JumpToBit(EntryPos); 875 if (Stream.SkipBlock()) 876 return error("Invalid record"); 877 return Error::success(); 878 } 879 // Couldn't load an index, fallback to loading all the block "old-style". 880 } 881 882 unsigned NextMetadataNo = MetadataList.size(); 883 884 // Read all the records. 885 while (true) { 886 BitstreamEntry Entry = Stream.advanceSkippingSubblocks(); 887 888 switch (Entry.Kind) { 889 case BitstreamEntry::SubBlock: // Handled for us already. 890 case BitstreamEntry::Error: 891 return error("Malformed block"); 892 case BitstreamEntry::EndBlock: 893 resolveForwardRefsAndPlaceholders(Placeholders); 894 upgradeDebugInfo(); 895 return Error::success(); 896 case BitstreamEntry::Record: 897 // The interesting case. 898 break; 899 } 900 901 // Read a record. 902 Record.clear(); 903 StringRef Blob; 904 ++NumMDRecordLoaded; 905 unsigned Code = Stream.readRecord(Entry.ID, Record, &Blob); 906 if (Error Err = 907 parseOneMetadata(Record, Code, Placeholders, Blob, NextMetadataNo)) 908 return Err; 909 } 910 } 911 912 MDString *MetadataLoader::MetadataLoaderImpl::lazyLoadOneMDString(unsigned ID) { 913 ++NumMDStringLoaded; 914 if (Metadata *MD = MetadataList.lookup(ID)) 915 return cast<MDString>(MD); 916 auto MDS = MDString::get(Context, MDStringRef[ID]); 917 MetadataList.assignValue(MDS, ID); 918 return MDS; 919 } 920 921 void MetadataLoader::MetadataLoaderImpl::lazyLoadOneMetadata( 922 unsigned ID, PlaceholderQueue &Placeholders) { 923 assert(ID < (MDStringRef.size()) + GlobalMetadataBitPosIndex.size()); 924 assert(ID >= MDStringRef.size() && "Unexpected lazy-loading of MDString"); 925 // Lookup first if the metadata hasn't already been loaded. 926 if (auto *MD = MetadataList.lookup(ID)) { 927 auto *N = dyn_cast_or_null<MDNode>(MD); 928 if (!N->isTemporary()) 929 return; 930 } 931 SmallVector<uint64_t, 64> Record; 932 StringRef Blob; 933 IndexCursor.JumpToBit(GlobalMetadataBitPosIndex[ID - MDStringRef.size()]); 934 auto Entry = IndexCursor.advanceSkippingSubblocks(); 935 ++NumMDRecordLoaded; 936 unsigned Code = IndexCursor.readRecord(Entry.ID, Record, &Blob); 937 if (Error Err = parseOneMetadata(Record, Code, Placeholders, Blob, ID)) 938 report_fatal_error("Can't lazyload MD"); 939 } 940 941 /// Ensure that all forward-references and placeholders are resolved. 942 /// Iteratively lazy-loading metadata on-demand if needed. 943 void MetadataLoader::MetadataLoaderImpl::resolveForwardRefsAndPlaceholders( 944 PlaceholderQueue &Placeholders) { 945 DenseSet<unsigned> Temporaries; 946 while (1) { 947 // Populate Temporaries with the placeholders that haven't been loaded yet. 948 Placeholders.getTemporaries(MetadataList, Temporaries); 949 950 // If we don't have any temporary, or FwdReference, we're done! 951 if (Temporaries.empty() && !MetadataList.hasFwdRefs()) 952 break; 953 954 // First, load all the temporaries. This can add new placeholders or 955 // forward references. 956 for (auto ID : Temporaries) 957 lazyLoadOneMetadata(ID, Placeholders); 958 Temporaries.clear(); 959 960 // Second, load the forward-references. This can also add new placeholders 961 // or forward references. 962 while (MetadataList.hasFwdRefs()) 963 lazyLoadOneMetadata(MetadataList.getNextFwdRef(), Placeholders); 964 } 965 // At this point we don't have any forward reference remaining, or temporary 966 // that haven't been loaded. We can safely drop RAUW support and mark cycles 967 // as resolved. 968 MetadataList.tryToResolveCycles(); 969 970 // Finally, everything is in place, we can replace the placeholders operands 971 // with the final node they refer to. 972 Placeholders.flush(MetadataList); 973 } 974 975 Error MetadataLoader::MetadataLoaderImpl::parseOneMetadata( 976 SmallVectorImpl<uint64_t> &Record, unsigned Code, 977 PlaceholderQueue &Placeholders, StringRef Blob, unsigned &NextMetadataNo) { 978 979 bool IsDistinct = false; 980 auto getMD = [&](unsigned ID) -> Metadata * { 981 if (ID < MDStringRef.size()) 982 return lazyLoadOneMDString(ID); 983 if (!IsDistinct) { 984 if (auto *MD = MetadataList.lookup(ID)) 985 return MD; 986 // If lazy-loading is enabled, we try recursively to load the operand 987 // instead of creating a temporary. 988 if (ID < (MDStringRef.size() + GlobalMetadataBitPosIndex.size())) { 989 // Create a temporary for the node that is referencing the operand we 990 // will lazy-load. It is needed before recursing in case there are 991 // uniquing cycles. 992 MetadataList.getMetadataFwdRef(NextMetadataNo); 993 lazyLoadOneMetadata(ID, Placeholders); 994 return MetadataList.lookup(ID); 995 } 996 // Return a temporary. 997 return MetadataList.getMetadataFwdRef(ID); 998 } 999 if (auto *MD = MetadataList.getMetadataIfResolved(ID)) 1000 return MD; 1001 return &Placeholders.getPlaceholderOp(ID); 1002 }; 1003 auto getMDOrNull = [&](unsigned ID) -> Metadata * { 1004 if (ID) 1005 return getMD(ID - 1); 1006 return nullptr; 1007 }; 1008 auto getMDOrNullWithoutPlaceholders = [&](unsigned ID) -> Metadata * { 1009 if (ID) 1010 return MetadataList.getMetadataFwdRef(ID - 1); 1011 return nullptr; 1012 }; 1013 auto getMDString = [&](unsigned ID) -> MDString * { 1014 // This requires that the ID is not really a forward reference. In 1015 // particular, the MDString must already have been resolved. 1016 auto MDS = getMDOrNull(ID); 1017 return cast_or_null<MDString>(MDS); 1018 }; 1019 1020 // Support for old type refs. 1021 auto getDITypeRefOrNull = [&](unsigned ID) { 1022 return MetadataList.upgradeTypeRef(getMDOrNull(ID)); 1023 }; 1024 1025 #define GET_OR_DISTINCT(CLASS, ARGS) \ 1026 (IsDistinct ? CLASS::getDistinct ARGS : CLASS::get ARGS) 1027 1028 switch (Code) { 1029 default: // Default behavior: ignore. 1030 break; 1031 case bitc::METADATA_NAME: { 1032 // Read name of the named metadata. 1033 SmallString<8> Name(Record.begin(), Record.end()); 1034 Record.clear(); 1035 Code = Stream.ReadCode(); 1036 1037 ++NumMDRecordLoaded; 1038 unsigned NextBitCode = Stream.readRecord(Code, Record); 1039 if (NextBitCode != bitc::METADATA_NAMED_NODE) 1040 return error("METADATA_NAME not followed by METADATA_NAMED_NODE"); 1041 1042 // Read named metadata elements. 1043 unsigned Size = Record.size(); 1044 NamedMDNode *NMD = TheModule.getOrInsertNamedMetadata(Name); 1045 for (unsigned i = 0; i != Size; ++i) { 1046 MDNode *MD = MetadataList.getMDNodeFwdRefOrNull(Record[i]); 1047 if (!MD) 1048 return error("Invalid named metadata: expect fwd ref to MDNode"); 1049 NMD->addOperand(MD); 1050 } 1051 break; 1052 } 1053 case bitc::METADATA_OLD_FN_NODE: { 1054 // FIXME: Remove in 4.0. 1055 // This is a LocalAsMetadata record, the only type of function-local 1056 // metadata. 1057 if (Record.size() % 2 == 1) 1058 return error("Invalid record"); 1059 1060 // If this isn't a LocalAsMetadata record, we're dropping it. This used 1061 // to be legal, but there's no upgrade path. 1062 auto dropRecord = [&] { 1063 MetadataList.assignValue(MDNode::get(Context, None), NextMetadataNo); 1064 NextMetadataNo++; 1065 }; 1066 if (Record.size() != 2) { 1067 dropRecord(); 1068 break; 1069 } 1070 1071 Type *Ty = getTypeByID(Record[0]); 1072 if (Ty->isMetadataTy() || Ty->isVoidTy()) { 1073 dropRecord(); 1074 break; 1075 } 1076 1077 MetadataList.assignValue( 1078 LocalAsMetadata::get(ValueList.getValueFwdRef(Record[1], Ty)), 1079 NextMetadataNo); 1080 NextMetadataNo++; 1081 break; 1082 } 1083 case bitc::METADATA_OLD_NODE: { 1084 // FIXME: Remove in 4.0. 1085 if (Record.size() % 2 == 1) 1086 return error("Invalid record"); 1087 1088 unsigned Size = Record.size(); 1089 SmallVector<Metadata *, 8> Elts; 1090 for (unsigned i = 0; i != Size; i += 2) { 1091 Type *Ty = getTypeByID(Record[i]); 1092 if (!Ty) 1093 return error("Invalid record"); 1094 if (Ty->isMetadataTy()) 1095 Elts.push_back(getMD(Record[i + 1])); 1096 else if (!Ty->isVoidTy()) { 1097 auto *MD = 1098 ValueAsMetadata::get(ValueList.getValueFwdRef(Record[i + 1], Ty)); 1099 assert(isa<ConstantAsMetadata>(MD) && 1100 "Expected non-function-local metadata"); 1101 Elts.push_back(MD); 1102 } else 1103 Elts.push_back(nullptr); 1104 } 1105 MetadataList.assignValue(MDNode::get(Context, Elts), NextMetadataNo); 1106 NextMetadataNo++; 1107 break; 1108 } 1109 case bitc::METADATA_VALUE: { 1110 if (Record.size() != 2) 1111 return error("Invalid record"); 1112 1113 Type *Ty = getTypeByID(Record[0]); 1114 if (Ty->isMetadataTy() || Ty->isVoidTy()) 1115 return error("Invalid record"); 1116 1117 MetadataList.assignValue( 1118 ValueAsMetadata::get(ValueList.getValueFwdRef(Record[1], Ty)), 1119 NextMetadataNo); 1120 NextMetadataNo++; 1121 break; 1122 } 1123 case bitc::METADATA_DISTINCT_NODE: 1124 IsDistinct = true; 1125 LLVM_FALLTHROUGH; 1126 case bitc::METADATA_NODE: { 1127 SmallVector<Metadata *, 8> Elts; 1128 Elts.reserve(Record.size()); 1129 for (unsigned ID : Record) 1130 Elts.push_back(getMDOrNull(ID)); 1131 MetadataList.assignValue(IsDistinct ? MDNode::getDistinct(Context, Elts) 1132 : MDNode::get(Context, Elts), 1133 NextMetadataNo); 1134 NextMetadataNo++; 1135 break; 1136 } 1137 case bitc::METADATA_LOCATION: { 1138 if (Record.size() != 5 && Record.size() != 6) 1139 return error("Invalid record"); 1140 1141 IsDistinct = Record[0]; 1142 unsigned Line = Record[1]; 1143 unsigned Column = Record[2]; 1144 Metadata *Scope = getMD(Record[3]); 1145 Metadata *InlinedAt = getMDOrNull(Record[4]); 1146 bool ImplicitCode = Record.size() == 6 && Record[5]; 1147 MetadataList.assignValue( 1148 GET_OR_DISTINCT(DILocation, (Context, Line, Column, Scope, InlinedAt, 1149 ImplicitCode)), 1150 NextMetadataNo); 1151 NextMetadataNo++; 1152 break; 1153 } 1154 case bitc::METADATA_GENERIC_DEBUG: { 1155 if (Record.size() < 4) 1156 return error("Invalid record"); 1157 1158 IsDistinct = Record[0]; 1159 unsigned Tag = Record[1]; 1160 unsigned Version = Record[2]; 1161 1162 if (Tag >= 1u << 16 || Version != 0) 1163 return error("Invalid record"); 1164 1165 auto *Header = getMDString(Record[3]); 1166 SmallVector<Metadata *, 8> DwarfOps; 1167 for (unsigned I = 4, E = Record.size(); I != E; ++I) 1168 DwarfOps.push_back(getMDOrNull(Record[I])); 1169 MetadataList.assignValue( 1170 GET_OR_DISTINCT(GenericDINode, (Context, Tag, Header, DwarfOps)), 1171 NextMetadataNo); 1172 NextMetadataNo++; 1173 break; 1174 } 1175 case bitc::METADATA_SUBRANGE: { 1176 Metadata *Val = nullptr; 1177 // Operand 'count' is interpreted as: 1178 // - Signed integer (version 0) 1179 // - Metadata node (version 1) 1180 switch (Record[0] >> 1) { 1181 case 0: 1182 Val = GET_OR_DISTINCT(DISubrange, 1183 (Context, Record[1], unrotateSign(Record.back()))); 1184 break; 1185 case 1: 1186 Val = GET_OR_DISTINCT(DISubrange, (Context, getMDOrNull(Record[1]), 1187 unrotateSign(Record.back()))); 1188 break; 1189 default: 1190 return error("Invalid record: Unsupported version of DISubrange"); 1191 } 1192 1193 MetadataList.assignValue(Val, NextMetadataNo); 1194 IsDistinct = Record[0] & 1; 1195 NextMetadataNo++; 1196 break; 1197 } 1198 case bitc::METADATA_ENUMERATOR: { 1199 if (Record.size() != 3) 1200 return error("Invalid record"); 1201 1202 IsDistinct = Record[0] & 1; 1203 bool IsUnsigned = Record[0] & 2; 1204 MetadataList.assignValue( 1205 GET_OR_DISTINCT(DIEnumerator, (Context, unrotateSign(Record[1]), 1206 IsUnsigned, getMDString(Record[2]))), 1207 NextMetadataNo); 1208 NextMetadataNo++; 1209 break; 1210 } 1211 case bitc::METADATA_BASIC_TYPE: { 1212 if (Record.size() < 6 || Record.size() > 7) 1213 return error("Invalid record"); 1214 1215 IsDistinct = Record[0]; 1216 DINode::DIFlags Flags = (Record.size() > 6) ? 1217 static_cast<DINode::DIFlags>(Record[6]) : DINode::FlagZero; 1218 1219 MetadataList.assignValue( 1220 GET_OR_DISTINCT(DIBasicType, 1221 (Context, Record[1], getMDString(Record[2]), Record[3], 1222 Record[4], Record[5], Flags)), 1223 NextMetadataNo); 1224 NextMetadataNo++; 1225 break; 1226 } 1227 case bitc::METADATA_DERIVED_TYPE: { 1228 if (Record.size() < 12 || Record.size() > 13) 1229 return error("Invalid record"); 1230 1231 // DWARF address space is encoded as N->getDWARFAddressSpace() + 1. 0 means 1232 // that there is no DWARF address space associated with DIDerivedType. 1233 Optional<unsigned> DWARFAddressSpace; 1234 if (Record.size() > 12 && Record[12]) 1235 DWARFAddressSpace = Record[12] - 1; 1236 1237 IsDistinct = Record[0]; 1238 DINode::DIFlags Flags = static_cast<DINode::DIFlags>(Record[10]); 1239 MetadataList.assignValue( 1240 GET_OR_DISTINCT(DIDerivedType, 1241 (Context, Record[1], getMDString(Record[2]), 1242 getMDOrNull(Record[3]), Record[4], 1243 getDITypeRefOrNull(Record[5]), 1244 getDITypeRefOrNull(Record[6]), Record[7], Record[8], 1245 Record[9], DWARFAddressSpace, Flags, 1246 getDITypeRefOrNull(Record[11]))), 1247 NextMetadataNo); 1248 NextMetadataNo++; 1249 break; 1250 } 1251 case bitc::METADATA_COMPOSITE_TYPE: { 1252 if (Record.size() < 16 || Record.size() > 17) 1253 return error("Invalid record"); 1254 1255 // If we have a UUID and this is not a forward declaration, lookup the 1256 // mapping. 1257 IsDistinct = Record[0] & 0x1; 1258 bool IsNotUsedInTypeRef = Record[0] >= 2; 1259 unsigned Tag = Record[1]; 1260 MDString *Name = getMDString(Record[2]); 1261 Metadata *File = getMDOrNull(Record[3]); 1262 unsigned Line = Record[4]; 1263 Metadata *Scope = getDITypeRefOrNull(Record[5]); 1264 Metadata *BaseType = nullptr; 1265 uint64_t SizeInBits = Record[7]; 1266 if (Record[8] > (uint64_t)std::numeric_limits<uint32_t>::max()) 1267 return error("Alignment value is too large"); 1268 uint32_t AlignInBits = Record[8]; 1269 uint64_t OffsetInBits = 0; 1270 DINode::DIFlags Flags = static_cast<DINode::DIFlags>(Record[10]); 1271 Metadata *Elements = nullptr; 1272 unsigned RuntimeLang = Record[12]; 1273 Metadata *VTableHolder = nullptr; 1274 Metadata *TemplateParams = nullptr; 1275 Metadata *Discriminator = nullptr; 1276 auto *Identifier = getMDString(Record[15]); 1277 // If this module is being parsed so that it can be ThinLTO imported 1278 // into another module, composite types only need to be imported 1279 // as type declarations (unless full type definitions requested). 1280 // Create type declarations up front to save memory. Also, buildODRType 1281 // handles the case where this is type ODRed with a definition needed 1282 // by the importing module, in which case the existing definition is 1283 // used. 1284 if (IsImporting && !ImportFullTypeDefinitions && Identifier && 1285 (Tag == dwarf::DW_TAG_enumeration_type || 1286 Tag == dwarf::DW_TAG_class_type || 1287 Tag == dwarf::DW_TAG_structure_type || 1288 Tag == dwarf::DW_TAG_union_type)) { 1289 Flags = Flags | DINode::FlagFwdDecl; 1290 } else { 1291 BaseType = getDITypeRefOrNull(Record[6]); 1292 OffsetInBits = Record[9]; 1293 Elements = getMDOrNull(Record[11]); 1294 VTableHolder = getDITypeRefOrNull(Record[13]); 1295 TemplateParams = getMDOrNull(Record[14]); 1296 if (Record.size() > 16) 1297 Discriminator = getMDOrNull(Record[16]); 1298 } 1299 DICompositeType *CT = nullptr; 1300 if (Identifier) 1301 CT = DICompositeType::buildODRType( 1302 Context, *Identifier, Tag, Name, File, Line, Scope, BaseType, 1303 SizeInBits, AlignInBits, OffsetInBits, Flags, Elements, RuntimeLang, 1304 VTableHolder, TemplateParams, Discriminator); 1305 1306 // Create a node if we didn't get a lazy ODR type. 1307 if (!CT) 1308 CT = GET_OR_DISTINCT(DICompositeType, 1309 (Context, Tag, Name, File, Line, Scope, BaseType, 1310 SizeInBits, AlignInBits, OffsetInBits, Flags, 1311 Elements, RuntimeLang, VTableHolder, TemplateParams, 1312 Identifier, Discriminator)); 1313 if (!IsNotUsedInTypeRef && Identifier) 1314 MetadataList.addTypeRef(*Identifier, *cast<DICompositeType>(CT)); 1315 1316 MetadataList.assignValue(CT, NextMetadataNo); 1317 NextMetadataNo++; 1318 break; 1319 } 1320 case bitc::METADATA_SUBROUTINE_TYPE: { 1321 if (Record.size() < 3 || Record.size() > 4) 1322 return error("Invalid record"); 1323 bool IsOldTypeRefArray = Record[0] < 2; 1324 unsigned CC = (Record.size() > 3) ? Record[3] : 0; 1325 1326 IsDistinct = Record[0] & 0x1; 1327 DINode::DIFlags Flags = static_cast<DINode::DIFlags>(Record[1]); 1328 Metadata *Types = getMDOrNull(Record[2]); 1329 if (LLVM_UNLIKELY(IsOldTypeRefArray)) 1330 Types = MetadataList.upgradeTypeRefArray(Types); 1331 1332 MetadataList.assignValue( 1333 GET_OR_DISTINCT(DISubroutineType, (Context, Flags, CC, Types)), 1334 NextMetadataNo); 1335 NextMetadataNo++; 1336 break; 1337 } 1338 1339 case bitc::METADATA_MODULE: { 1340 if (Record.size() != 6) 1341 return error("Invalid record"); 1342 1343 IsDistinct = Record[0]; 1344 MetadataList.assignValue( 1345 GET_OR_DISTINCT(DIModule, 1346 (Context, getMDOrNull(Record[1]), 1347 getMDString(Record[2]), getMDString(Record[3]), 1348 getMDString(Record[4]), getMDString(Record[5]))), 1349 NextMetadataNo); 1350 NextMetadataNo++; 1351 break; 1352 } 1353 1354 case bitc::METADATA_FILE: { 1355 if (Record.size() != 3 && Record.size() != 5 && Record.size() != 6) 1356 return error("Invalid record"); 1357 1358 IsDistinct = Record[0]; 1359 Optional<DIFile::ChecksumInfo<MDString *>> Checksum; 1360 // The BitcodeWriter writes null bytes into Record[3:4] when the Checksum 1361 // is not present. This matches up with the old internal representation, 1362 // and the old encoding for CSK_None in the ChecksumKind. The new 1363 // representation reserves the value 0 in the ChecksumKind to continue to 1364 // encode None in a backwards-compatible way. 1365 if (Record.size() > 4 && Record[3] && Record[4]) 1366 Checksum.emplace(static_cast<DIFile::ChecksumKind>(Record[3]), 1367 getMDString(Record[4])); 1368 MetadataList.assignValue( 1369 GET_OR_DISTINCT( 1370 DIFile, 1371 (Context, getMDString(Record[1]), getMDString(Record[2]), Checksum, 1372 Record.size() > 5 ? Optional<MDString *>(getMDString(Record[5])) 1373 : None)), 1374 NextMetadataNo); 1375 NextMetadataNo++; 1376 break; 1377 } 1378 case bitc::METADATA_COMPILE_UNIT: { 1379 if (Record.size() < 14 || Record.size() > 19) 1380 return error("Invalid record"); 1381 1382 // Ignore Record[0], which indicates whether this compile unit is 1383 // distinct. It's always distinct. 1384 IsDistinct = true; 1385 auto *CU = DICompileUnit::getDistinct( 1386 Context, Record[1], getMDOrNull(Record[2]), getMDString(Record[3]), 1387 Record[4], getMDString(Record[5]), Record[6], getMDString(Record[7]), 1388 Record[8], getMDOrNull(Record[9]), getMDOrNull(Record[10]), 1389 getMDOrNull(Record[12]), getMDOrNull(Record[13]), 1390 Record.size() <= 15 ? nullptr : getMDOrNull(Record[15]), 1391 Record.size() <= 14 ? 0 : Record[14], 1392 Record.size() <= 16 ? true : Record[16], 1393 Record.size() <= 17 ? false : Record[17], 1394 Record.size() <= 18 ? 0 : Record[18], 1395 Record.size() <= 19 ? 0 : Record[19]); 1396 1397 MetadataList.assignValue(CU, NextMetadataNo); 1398 NextMetadataNo++; 1399 1400 // Move the Upgrade the list of subprograms. 1401 if (Metadata *SPs = getMDOrNullWithoutPlaceholders(Record[11])) 1402 CUSubprograms.push_back({CU, SPs}); 1403 break; 1404 } 1405 case bitc::METADATA_SUBPROGRAM: { 1406 if (Record.size() < 18 || Record.size() > 21) 1407 return error("Invalid record"); 1408 1409 IsDistinct = 1410 (Record[0] & 1) || Record[8]; // All definitions should be distinct. 1411 // Version 1 has a Function as Record[15]. 1412 // Version 2 has removed Record[15]. 1413 // Version 3 has the Unit as Record[15]. 1414 // Version 4 added thisAdjustment. 1415 bool HasUnit = Record[0] >= 2; 1416 if (HasUnit && Record.size() < 19) 1417 return error("Invalid record"); 1418 Metadata *CUorFn = getMDOrNull(Record[15]); 1419 unsigned Offset = Record.size() >= 19 ? 1 : 0; 1420 bool HasFn = Offset && !HasUnit; 1421 bool HasThisAdj = Record.size() >= 20; 1422 bool HasThrownTypes = Record.size() >= 21; 1423 DISubprogram::DISPFlags SPFlags = DISubprogram::toSPFlags( 1424 /*IsLocalToUnit=*/Record[7], /*IsDefinition=*/Record[8], 1425 /*IsOptimized=*/Record[14], /*Virtuality=*/Record[11]); 1426 DISubprogram *SP = GET_OR_DISTINCT( 1427 DISubprogram, 1428 (Context, 1429 getDITypeRefOrNull(Record[1]), // scope 1430 getMDString(Record[2]), // name 1431 getMDString(Record[3]), // linkageName 1432 getMDOrNull(Record[4]), // file 1433 Record[5], // line 1434 getMDOrNull(Record[6]), // type 1435 Record[9], // scopeLine 1436 getDITypeRefOrNull(Record[10]), // containingType 1437 Record[12], // virtualIndex 1438 HasThisAdj ? Record[19] : 0, // thisAdjustment 1439 static_cast<DINode::DIFlags>(Record[13]), // flags 1440 SPFlags, // SPFlags 1441 HasUnit ? CUorFn : nullptr, // unit 1442 getMDOrNull(Record[15 + Offset]), // templateParams 1443 getMDOrNull(Record[16 + Offset]), // declaration 1444 getMDOrNull(Record[17 + Offset]), // retainedNodes 1445 HasThrownTypes ? getMDOrNull(Record[20]) : nullptr // thrownTypes 1446 )); 1447 MetadataList.assignValue(SP, NextMetadataNo); 1448 NextMetadataNo++; 1449 1450 // Upgrade sp->function mapping to function->sp mapping. 1451 if (HasFn) { 1452 if (auto *CMD = dyn_cast_or_null<ConstantAsMetadata>(CUorFn)) 1453 if (auto *F = dyn_cast<Function>(CMD->getValue())) { 1454 if (F->isMaterializable()) 1455 // Defer until materialized; unmaterialized functions may not have 1456 // metadata. 1457 FunctionsWithSPs[F] = SP; 1458 else if (!F->empty()) 1459 F->setSubprogram(SP); 1460 } 1461 } 1462 break; 1463 } 1464 case bitc::METADATA_LEXICAL_BLOCK: { 1465 if (Record.size() != 5) 1466 return error("Invalid record"); 1467 1468 IsDistinct = Record[0]; 1469 MetadataList.assignValue( 1470 GET_OR_DISTINCT(DILexicalBlock, 1471 (Context, getMDOrNull(Record[1]), 1472 getMDOrNull(Record[2]), Record[3], Record[4])), 1473 NextMetadataNo); 1474 NextMetadataNo++; 1475 break; 1476 } 1477 case bitc::METADATA_LEXICAL_BLOCK_FILE: { 1478 if (Record.size() != 4) 1479 return error("Invalid record"); 1480 1481 IsDistinct = Record[0]; 1482 MetadataList.assignValue( 1483 GET_OR_DISTINCT(DILexicalBlockFile, 1484 (Context, getMDOrNull(Record[1]), 1485 getMDOrNull(Record[2]), Record[3])), 1486 NextMetadataNo); 1487 NextMetadataNo++; 1488 break; 1489 } 1490 case bitc::METADATA_NAMESPACE: { 1491 // Newer versions of DINamespace dropped file and line. 1492 MDString *Name; 1493 if (Record.size() == 3) 1494 Name = getMDString(Record[2]); 1495 else if (Record.size() == 5) 1496 Name = getMDString(Record[3]); 1497 else 1498 return error("Invalid record"); 1499 1500 IsDistinct = Record[0] & 1; 1501 bool ExportSymbols = Record[0] & 2; 1502 MetadataList.assignValue( 1503 GET_OR_DISTINCT(DINamespace, 1504 (Context, getMDOrNull(Record[1]), Name, ExportSymbols)), 1505 NextMetadataNo); 1506 NextMetadataNo++; 1507 break; 1508 } 1509 case bitc::METADATA_MACRO: { 1510 if (Record.size() != 5) 1511 return error("Invalid record"); 1512 1513 IsDistinct = Record[0]; 1514 MetadataList.assignValue( 1515 GET_OR_DISTINCT(DIMacro, 1516 (Context, Record[1], Record[2], getMDString(Record[3]), 1517 getMDString(Record[4]))), 1518 NextMetadataNo); 1519 NextMetadataNo++; 1520 break; 1521 } 1522 case bitc::METADATA_MACRO_FILE: { 1523 if (Record.size() != 5) 1524 return error("Invalid record"); 1525 1526 IsDistinct = Record[0]; 1527 MetadataList.assignValue( 1528 GET_OR_DISTINCT(DIMacroFile, 1529 (Context, Record[1], Record[2], getMDOrNull(Record[3]), 1530 getMDOrNull(Record[4]))), 1531 NextMetadataNo); 1532 NextMetadataNo++; 1533 break; 1534 } 1535 case bitc::METADATA_TEMPLATE_TYPE: { 1536 if (Record.size() != 3) 1537 return error("Invalid record"); 1538 1539 IsDistinct = Record[0]; 1540 MetadataList.assignValue(GET_OR_DISTINCT(DITemplateTypeParameter, 1541 (Context, getMDString(Record[1]), 1542 getDITypeRefOrNull(Record[2]))), 1543 NextMetadataNo); 1544 NextMetadataNo++; 1545 break; 1546 } 1547 case bitc::METADATA_TEMPLATE_VALUE: { 1548 if (Record.size() != 5) 1549 return error("Invalid record"); 1550 1551 IsDistinct = Record[0]; 1552 MetadataList.assignValue( 1553 GET_OR_DISTINCT(DITemplateValueParameter, 1554 (Context, Record[1], getMDString(Record[2]), 1555 getDITypeRefOrNull(Record[3]), 1556 getMDOrNull(Record[4]))), 1557 NextMetadataNo); 1558 NextMetadataNo++; 1559 break; 1560 } 1561 case bitc::METADATA_GLOBAL_VAR: { 1562 if (Record.size() < 11 || Record.size() > 13) 1563 return error("Invalid record"); 1564 1565 IsDistinct = Record[0] & 1; 1566 unsigned Version = Record[0] >> 1; 1567 1568 if (Version == 2) { 1569 MetadataList.assignValue( 1570 GET_OR_DISTINCT( 1571 DIGlobalVariable, 1572 (Context, getMDOrNull(Record[1]), getMDString(Record[2]), 1573 getMDString(Record[3]), getMDOrNull(Record[4]), Record[5], 1574 getDITypeRefOrNull(Record[6]), Record[7], Record[8], 1575 getMDOrNull(Record[9]), getMDOrNull(Record[10]), Record[11])), 1576 NextMetadataNo); 1577 1578 NextMetadataNo++; 1579 } else if (Version == 1) { 1580 // No upgrade necessary. A null field will be introduced to indicate 1581 // that no parameter information is available. 1582 MetadataList.assignValue( 1583 GET_OR_DISTINCT(DIGlobalVariable, 1584 (Context, getMDOrNull(Record[1]), 1585 getMDString(Record[2]), getMDString(Record[3]), 1586 getMDOrNull(Record[4]), Record[5], 1587 getDITypeRefOrNull(Record[6]), Record[7], Record[8], 1588 getMDOrNull(Record[10]), nullptr, Record[11])), 1589 NextMetadataNo); 1590 1591 NextMetadataNo++; 1592 } else if (Version == 0) { 1593 // Upgrade old metadata, which stored a global variable reference or a 1594 // ConstantInt here. 1595 NeedUpgradeToDIGlobalVariableExpression = true; 1596 Metadata *Expr = getMDOrNull(Record[9]); 1597 uint32_t AlignInBits = 0; 1598 if (Record.size() > 11) { 1599 if (Record[11] > (uint64_t)std::numeric_limits<uint32_t>::max()) 1600 return error("Alignment value is too large"); 1601 AlignInBits = Record[11]; 1602 } 1603 GlobalVariable *Attach = nullptr; 1604 if (auto *CMD = dyn_cast_or_null<ConstantAsMetadata>(Expr)) { 1605 if (auto *GV = dyn_cast<GlobalVariable>(CMD->getValue())) { 1606 Attach = GV; 1607 Expr = nullptr; 1608 } else if (auto *CI = dyn_cast<ConstantInt>(CMD->getValue())) { 1609 Expr = DIExpression::get(Context, 1610 {dwarf::DW_OP_constu, CI->getZExtValue(), 1611 dwarf::DW_OP_stack_value}); 1612 } else { 1613 Expr = nullptr; 1614 } 1615 } 1616 DIGlobalVariable *DGV = GET_OR_DISTINCT( 1617 DIGlobalVariable, 1618 (Context, getMDOrNull(Record[1]), getMDString(Record[2]), 1619 getMDString(Record[3]), getMDOrNull(Record[4]), Record[5], 1620 getDITypeRefOrNull(Record[6]), Record[7], Record[8], 1621 getMDOrNull(Record[10]), nullptr, AlignInBits)); 1622 1623 DIGlobalVariableExpression *DGVE = nullptr; 1624 if (Attach || Expr) 1625 DGVE = DIGlobalVariableExpression::getDistinct( 1626 Context, DGV, Expr ? Expr : DIExpression::get(Context, {})); 1627 if (Attach) 1628 Attach->addDebugInfo(DGVE); 1629 1630 auto *MDNode = Expr ? cast<Metadata>(DGVE) : cast<Metadata>(DGV); 1631 MetadataList.assignValue(MDNode, NextMetadataNo); 1632 NextMetadataNo++; 1633 } else 1634 return error("Invalid record"); 1635 1636 break; 1637 } 1638 case bitc::METADATA_LOCAL_VAR: { 1639 // 10th field is for the obseleted 'inlinedAt:' field. 1640 if (Record.size() < 8 || Record.size() > 10) 1641 return error("Invalid record"); 1642 1643 IsDistinct = Record[0] & 1; 1644 bool HasAlignment = Record[0] & 2; 1645 // 2nd field used to be an artificial tag, either DW_TAG_auto_variable or 1646 // DW_TAG_arg_variable, if we have alignment flag encoded it means, that 1647 // this is newer version of record which doesn't have artificial tag. 1648 bool HasTag = !HasAlignment && Record.size() > 8; 1649 DINode::DIFlags Flags = static_cast<DINode::DIFlags>(Record[7 + HasTag]); 1650 uint32_t AlignInBits = 0; 1651 if (HasAlignment) { 1652 if (Record[8 + HasTag] > (uint64_t)std::numeric_limits<uint32_t>::max()) 1653 return error("Alignment value is too large"); 1654 AlignInBits = Record[8 + HasTag]; 1655 } 1656 MetadataList.assignValue( 1657 GET_OR_DISTINCT(DILocalVariable, 1658 (Context, getMDOrNull(Record[1 + HasTag]), 1659 getMDString(Record[2 + HasTag]), 1660 getMDOrNull(Record[3 + HasTag]), Record[4 + HasTag], 1661 getDITypeRefOrNull(Record[5 + HasTag]), 1662 Record[6 + HasTag], Flags, AlignInBits)), 1663 NextMetadataNo); 1664 NextMetadataNo++; 1665 break; 1666 } 1667 case bitc::METADATA_LABEL: { 1668 if (Record.size() != 5) 1669 return error("Invalid record"); 1670 1671 IsDistinct = Record[0] & 1; 1672 MetadataList.assignValue( 1673 GET_OR_DISTINCT(DILabel, 1674 (Context, getMDOrNull(Record[1]), 1675 getMDString(Record[2]), 1676 getMDOrNull(Record[3]), Record[4])), 1677 NextMetadataNo); 1678 NextMetadataNo++; 1679 break; 1680 } 1681 case bitc::METADATA_EXPRESSION: { 1682 if (Record.size() < 1) 1683 return error("Invalid record"); 1684 1685 IsDistinct = Record[0] & 1; 1686 uint64_t Version = Record[0] >> 1; 1687 auto Elts = MutableArrayRef<uint64_t>(Record).slice(1); 1688 1689 SmallVector<uint64_t, 6> Buffer; 1690 if (Error Err = upgradeDIExpression(Version, Elts, Buffer)) 1691 return Err; 1692 1693 MetadataList.assignValue( 1694 GET_OR_DISTINCT(DIExpression, (Context, Elts)), NextMetadataNo); 1695 NextMetadataNo++; 1696 break; 1697 } 1698 case bitc::METADATA_GLOBAL_VAR_EXPR: { 1699 if (Record.size() != 3) 1700 return error("Invalid record"); 1701 1702 IsDistinct = Record[0]; 1703 Metadata *Expr = getMDOrNull(Record[2]); 1704 if (!Expr) 1705 Expr = DIExpression::get(Context, {}); 1706 MetadataList.assignValue( 1707 GET_OR_DISTINCT(DIGlobalVariableExpression, 1708 (Context, getMDOrNull(Record[1]), Expr)), 1709 NextMetadataNo); 1710 NextMetadataNo++; 1711 break; 1712 } 1713 case bitc::METADATA_OBJC_PROPERTY: { 1714 if (Record.size() != 8) 1715 return error("Invalid record"); 1716 1717 IsDistinct = Record[0]; 1718 MetadataList.assignValue( 1719 GET_OR_DISTINCT(DIObjCProperty, 1720 (Context, getMDString(Record[1]), 1721 getMDOrNull(Record[2]), Record[3], 1722 getMDString(Record[4]), getMDString(Record[5]), 1723 Record[6], getDITypeRefOrNull(Record[7]))), 1724 NextMetadataNo); 1725 NextMetadataNo++; 1726 break; 1727 } 1728 case bitc::METADATA_IMPORTED_ENTITY: { 1729 if (Record.size() != 6 && Record.size() != 7) 1730 return error("Invalid record"); 1731 1732 IsDistinct = Record[0]; 1733 bool HasFile = (Record.size() == 7); 1734 MetadataList.assignValue( 1735 GET_OR_DISTINCT(DIImportedEntity, 1736 (Context, Record[1], getMDOrNull(Record[2]), 1737 getDITypeRefOrNull(Record[3]), 1738 HasFile ? getMDOrNull(Record[6]) : nullptr, 1739 HasFile ? Record[4] : 0, getMDString(Record[5]))), 1740 NextMetadataNo); 1741 NextMetadataNo++; 1742 break; 1743 } 1744 case bitc::METADATA_STRING_OLD: { 1745 std::string String(Record.begin(), Record.end()); 1746 1747 // Test for upgrading !llvm.loop. 1748 HasSeenOldLoopTags |= mayBeOldLoopAttachmentTag(String); 1749 ++NumMDStringLoaded; 1750 Metadata *MD = MDString::get(Context, String); 1751 MetadataList.assignValue(MD, NextMetadataNo); 1752 NextMetadataNo++; 1753 break; 1754 } 1755 case bitc::METADATA_STRINGS: { 1756 auto CreateNextMDString = [&](StringRef Str) { 1757 ++NumMDStringLoaded; 1758 MetadataList.assignValue(MDString::get(Context, Str), NextMetadataNo); 1759 NextMetadataNo++; 1760 }; 1761 if (Error Err = parseMetadataStrings(Record, Blob, CreateNextMDString)) 1762 return Err; 1763 break; 1764 } 1765 case bitc::METADATA_GLOBAL_DECL_ATTACHMENT: { 1766 if (Record.size() % 2 == 0) 1767 return error("Invalid record"); 1768 unsigned ValueID = Record[0]; 1769 if (ValueID >= ValueList.size()) 1770 return error("Invalid record"); 1771 if (auto *GO = dyn_cast<GlobalObject>(ValueList[ValueID])) 1772 if (Error Err = parseGlobalObjectAttachment( 1773 *GO, ArrayRef<uint64_t>(Record).slice(1))) 1774 return Err; 1775 break; 1776 } 1777 case bitc::METADATA_KIND: { 1778 // Support older bitcode files that had METADATA_KIND records in a 1779 // block with METADATA_BLOCK_ID. 1780 if (Error Err = parseMetadataKindRecord(Record)) 1781 return Err; 1782 break; 1783 } 1784 } 1785 return Error::success(); 1786 #undef GET_OR_DISTINCT 1787 } 1788 1789 Error MetadataLoader::MetadataLoaderImpl::parseMetadataStrings( 1790 ArrayRef<uint64_t> Record, StringRef Blob, 1791 function_ref<void(StringRef)> CallBack) { 1792 // All the MDStrings in the block are emitted together in a single 1793 // record. The strings are concatenated and stored in a blob along with 1794 // their sizes. 1795 if (Record.size() != 2) 1796 return error("Invalid record: metadata strings layout"); 1797 1798 unsigned NumStrings = Record[0]; 1799 unsigned StringsOffset = Record[1]; 1800 if (!NumStrings) 1801 return error("Invalid record: metadata strings with no strings"); 1802 if (StringsOffset > Blob.size()) 1803 return error("Invalid record: metadata strings corrupt offset"); 1804 1805 StringRef Lengths = Blob.slice(0, StringsOffset); 1806 SimpleBitstreamCursor R(Lengths); 1807 1808 StringRef Strings = Blob.drop_front(StringsOffset); 1809 do { 1810 if (R.AtEndOfStream()) 1811 return error("Invalid record: metadata strings bad length"); 1812 1813 unsigned Size = R.ReadVBR(6); 1814 if (Strings.size() < Size) 1815 return error("Invalid record: metadata strings truncated chars"); 1816 1817 CallBack(Strings.slice(0, Size)); 1818 Strings = Strings.drop_front(Size); 1819 } while (--NumStrings); 1820 1821 return Error::success(); 1822 } 1823 1824 Error MetadataLoader::MetadataLoaderImpl::parseGlobalObjectAttachment( 1825 GlobalObject &GO, ArrayRef<uint64_t> Record) { 1826 assert(Record.size() % 2 == 0); 1827 for (unsigned I = 0, E = Record.size(); I != E; I += 2) { 1828 auto K = MDKindMap.find(Record[I]); 1829 if (K == MDKindMap.end()) 1830 return error("Invalid ID"); 1831 MDNode *MD = MetadataList.getMDNodeFwdRefOrNull(Record[I + 1]); 1832 if (!MD) 1833 return error("Invalid metadata attachment: expect fwd ref to MDNode"); 1834 GO.addMetadata(K->second, *MD); 1835 } 1836 return Error::success(); 1837 } 1838 1839 /// Parse metadata attachments. 1840 Error MetadataLoader::MetadataLoaderImpl::parseMetadataAttachment( 1841 Function &F, const SmallVectorImpl<Instruction *> &InstructionList) { 1842 if (Stream.EnterSubBlock(bitc::METADATA_ATTACHMENT_ID)) 1843 return error("Invalid record"); 1844 1845 SmallVector<uint64_t, 64> Record; 1846 PlaceholderQueue Placeholders; 1847 1848 while (true) { 1849 BitstreamEntry Entry = Stream.advanceSkippingSubblocks(); 1850 1851 switch (Entry.Kind) { 1852 case BitstreamEntry::SubBlock: // Handled for us already. 1853 case BitstreamEntry::Error: 1854 return error("Malformed block"); 1855 case BitstreamEntry::EndBlock: 1856 resolveForwardRefsAndPlaceholders(Placeholders); 1857 return Error::success(); 1858 case BitstreamEntry::Record: 1859 // The interesting case. 1860 break; 1861 } 1862 1863 // Read a metadata attachment record. 1864 Record.clear(); 1865 ++NumMDRecordLoaded; 1866 switch (Stream.readRecord(Entry.ID, Record)) { 1867 default: // Default behavior: ignore. 1868 break; 1869 case bitc::METADATA_ATTACHMENT: { 1870 unsigned RecordLength = Record.size(); 1871 if (Record.empty()) 1872 return error("Invalid record"); 1873 if (RecordLength % 2 == 0) { 1874 // A function attachment. 1875 if (Error Err = parseGlobalObjectAttachment(F, Record)) 1876 return Err; 1877 continue; 1878 } 1879 1880 // An instruction attachment. 1881 Instruction *Inst = InstructionList[Record[0]]; 1882 for (unsigned i = 1; i != RecordLength; i = i + 2) { 1883 unsigned Kind = Record[i]; 1884 DenseMap<unsigned, unsigned>::iterator I = MDKindMap.find(Kind); 1885 if (I == MDKindMap.end()) 1886 return error("Invalid ID"); 1887 if (I->second == LLVMContext::MD_tbaa && StripTBAA) 1888 continue; 1889 1890 auto Idx = Record[i + 1]; 1891 if (Idx < (MDStringRef.size() + GlobalMetadataBitPosIndex.size()) && 1892 !MetadataList.lookup(Idx)) { 1893 // Load the attachment if it is in the lazy-loadable range and hasn't 1894 // been loaded yet. 1895 lazyLoadOneMetadata(Idx, Placeholders); 1896 resolveForwardRefsAndPlaceholders(Placeholders); 1897 } 1898 1899 Metadata *Node = MetadataList.getMetadataFwdRef(Idx); 1900 if (isa<LocalAsMetadata>(Node)) 1901 // Drop the attachment. This used to be legal, but there's no 1902 // upgrade path. 1903 break; 1904 MDNode *MD = dyn_cast_or_null<MDNode>(Node); 1905 if (!MD) 1906 return error("Invalid metadata attachment"); 1907 1908 if (HasSeenOldLoopTags && I->second == LLVMContext::MD_loop) 1909 MD = upgradeInstructionLoopAttachment(*MD); 1910 1911 if (I->second == LLVMContext::MD_tbaa) { 1912 assert(!MD->isTemporary() && "should load MDs before attachments"); 1913 MD = UpgradeTBAANode(*MD); 1914 } 1915 Inst->setMetadata(I->second, MD); 1916 } 1917 break; 1918 } 1919 } 1920 } 1921 } 1922 1923 /// Parse a single METADATA_KIND record, inserting result in MDKindMap. 1924 Error MetadataLoader::MetadataLoaderImpl::parseMetadataKindRecord( 1925 SmallVectorImpl<uint64_t> &Record) { 1926 if (Record.size() < 2) 1927 return error("Invalid record"); 1928 1929 unsigned Kind = Record[0]; 1930 SmallString<8> Name(Record.begin() + 1, Record.end()); 1931 1932 unsigned NewKind = TheModule.getMDKindID(Name.str()); 1933 if (!MDKindMap.insert(std::make_pair(Kind, NewKind)).second) 1934 return error("Conflicting METADATA_KIND records"); 1935 return Error::success(); 1936 } 1937 1938 /// Parse the metadata kinds out of the METADATA_KIND_BLOCK. 1939 Error MetadataLoader::MetadataLoaderImpl::parseMetadataKinds() { 1940 if (Stream.EnterSubBlock(bitc::METADATA_KIND_BLOCK_ID)) 1941 return error("Invalid record"); 1942 1943 SmallVector<uint64_t, 64> Record; 1944 1945 // Read all the records. 1946 while (true) { 1947 BitstreamEntry Entry = Stream.advanceSkippingSubblocks(); 1948 1949 switch (Entry.Kind) { 1950 case BitstreamEntry::SubBlock: // Handled for us already. 1951 case BitstreamEntry::Error: 1952 return error("Malformed block"); 1953 case BitstreamEntry::EndBlock: 1954 return Error::success(); 1955 case BitstreamEntry::Record: 1956 // The interesting case. 1957 break; 1958 } 1959 1960 // Read a record. 1961 Record.clear(); 1962 ++NumMDRecordLoaded; 1963 unsigned Code = Stream.readRecord(Entry.ID, Record); 1964 switch (Code) { 1965 default: // Default behavior: ignore. 1966 break; 1967 case bitc::METADATA_KIND: { 1968 if (Error Err = parseMetadataKindRecord(Record)) 1969 return Err; 1970 break; 1971 } 1972 } 1973 } 1974 } 1975 1976 MetadataLoader &MetadataLoader::operator=(MetadataLoader &&RHS) { 1977 Pimpl = std::move(RHS.Pimpl); 1978 return *this; 1979 } 1980 MetadataLoader::MetadataLoader(MetadataLoader &&RHS) 1981 : Pimpl(std::move(RHS.Pimpl)) {} 1982 1983 MetadataLoader::~MetadataLoader() = default; 1984 MetadataLoader::MetadataLoader(BitstreamCursor &Stream, Module &TheModule, 1985 BitcodeReaderValueList &ValueList, 1986 bool IsImporting, 1987 std::function<Type *(unsigned)> getTypeByID) 1988 : Pimpl(llvm::make_unique<MetadataLoaderImpl>( 1989 Stream, TheModule, ValueList, std::move(getTypeByID), IsImporting)) {} 1990 1991 Error MetadataLoader::parseMetadata(bool ModuleLevel) { 1992 return Pimpl->parseMetadata(ModuleLevel); 1993 } 1994 1995 bool MetadataLoader::hasFwdRefs() const { return Pimpl->hasFwdRefs(); } 1996 1997 /// Return the given metadata, creating a replaceable forward reference if 1998 /// necessary. 1999 Metadata *MetadataLoader::getMetadataFwdRefOrLoad(unsigned Idx) { 2000 return Pimpl->getMetadataFwdRefOrLoad(Idx); 2001 } 2002 2003 DISubprogram *MetadataLoader::lookupSubprogramForFunction(Function *F) { 2004 return Pimpl->lookupSubprogramForFunction(F); 2005 } 2006 2007 Error MetadataLoader::parseMetadataAttachment( 2008 Function &F, const SmallVectorImpl<Instruction *> &InstructionList) { 2009 return Pimpl->parseMetadataAttachment(F, InstructionList); 2010 } 2011 2012 Error MetadataLoader::parseMetadataKinds() { 2013 return Pimpl->parseMetadataKinds(); 2014 } 2015 2016 void MetadataLoader::setStripTBAA(bool StripTBAA) { 2017 return Pimpl->setStripTBAA(StripTBAA); 2018 } 2019 2020 bool MetadataLoader::isStrippingTBAA() { return Pimpl->isStrippingTBAA(); } 2021 2022 unsigned MetadataLoader::size() const { return Pimpl->size(); } 2023 void MetadataLoader::shrinkTo(unsigned N) { return Pimpl->shrinkTo(N); } 2024 2025 void MetadataLoader::upgradeDebugIntrinsics(Function &F) { 2026 return Pimpl->upgradeDebugIntrinsics(F); 2027 } 2028